Millian N S, Garrow T A
Division of Nutritional Sciences, University of Illinois, Urbana, Illinois, 61801, USA.
Arch Biochem Biophys. 1998 Aug 1;356(1):93-8. doi: 10.1006/abbi.1998.0757.
We have overexpressed recombinant human liver betaine-homocysteine methyltransferase (BHMT; EC 2.1.1.5) in Escherichia coli and have purified the enzyme to homogeneity. The Michaelis constants for betaine and l-homocysteine are 2.2 mM and 4 microM, respectively. Analysis of the pure protein for metals by inductively coupled plasma emission spectrometry indicate that the recombinant enzyme contains zinc. Extensive dialysis in buffer containing high levels of EDTA could not strip the protein of zinc. However, dialysis against buffer containing EDTA and methyl methanethiosulfonate, followed by buffer containing EDTA and dithiothreitol, could remove zinc from the enzyme with concomitant loss of activity. Dialyzing the zinc-depleted enzyme against buffer containing 1 M urea and 2 mM zinc, followed by dialysis with buffer alone, completely restored BHMT activity and zinc content. BHMT was also partially purified from human liver. The purest BHMT-containing fractions also contained zinc and the enzyme was kinetically indistinguishable from the recombinant enzyme. As with the recombinant enzyme, the partially purified human liver enzyme could be inactivated by treatment with methyl methanethiosulfonate, EDTA, and dithiothreitol. Reconstitution of the zinc-depleted enzyme completely restored activity. We conclude that BHMT is a major zinc metalloenzyme in liver and that cysteineresidues are likely involved in zinc binding.
我们已在大肠杆菌中过表达重组人肝脏甜菜碱 - 同型半胱氨酸甲基转移酶(BHMT;EC 2.1.1.5),并将该酶纯化至同质。甜菜碱和L - 同型半胱氨酸的米氏常数分别为2.2 mM和4 μM。通过电感耦合等离子体发射光谱法对纯蛋白进行金属分析表明,重组酶含有锌。在含有高浓度EDTA的缓冲液中进行广泛透析无法去除蛋白质中的锌。然而,先用含有EDTA和甲硫基甲烷磺酸盐的缓冲液透析,然后用含有EDTA和二硫苏糖醇的缓冲液透析,可以使酶中的锌去除,同时活性丧失。将缺锌的酶在含有1 M尿素和2 mM锌的缓冲液中透析,然后仅用缓冲液透析,可完全恢复BHMT活性和锌含量。BHMT也从人肝脏中部分纯化。最纯的含BHMT组分也含有锌,并且该酶在动力学上与重组酶无法区分。与重组酶一样,部分纯化的人肝脏酶可用甲硫基甲烷磺酸盐、EDTA和二硫苏糖醇处理使其失活。缺锌酶的重建完全恢复了活性。我们得出结论,BHMT是肝脏中的一种主要锌金属酶,并且半胱氨酸残基可能参与锌的结合。